生物
数量性状位点
表达数量性状基因座
耐旱性
特质
转录组
孟德尔随机化
全基因组关联研究
关联映射
基因座(遗传学)
干旱胁迫
生物技术
基因组学
计算生物学
弹性(材料科学)
栽培
功能(生物学)
拟南芥
遗传学
适应(眼睛)
候选基因
插补(统计学)
粮食产量
抗旱性
心理弹性
用水效率
作者
Yuxin Zhou,Dongzhi Wang,H. M. Wang,Yunzhou Qiao,Peng Zhao,Yuan Cao,Xuemei Liu,Yiman Yang,Xuelei Lin,Shengbao Xu,Baodi Dong,Jun Xiao
标识
DOI:10.1038/s41467-025-63642-5
摘要
Improving wheat drought resilience and water use efficiency (WUE) is critical for sustaining productivity under increasing water scarcity. Here, we integrate genome-wide association study (GWAS), expression quantitative trait locus (eQTL) mapping, population-transcriptome analysis, and summary-data-based mendelian randomization (SMR), followed by functional validation using indexed EMS mutants and transgenic lines, to systematically identify key WUE regulators. GWAS across water conditions in 228 accessions identifies 73 quantitative trait loci (QTLs) for WUE-traits. Transcriptome profiling of 110 diverse accessions reveals 28 drought-responsive modules. eQTL mapping uncovers 146,966 regulatory variants, including condition-specific hotspots associated with key drought-related pathways. Integrative analysis underscores 85 high-confidence candidate genes, notably TaMYB7-A1. Overexpression of TaMYB7-A1 enhances photosynthesis, WUE, root development, and grain yield under drought condition by activating TaPIP2;2-B1 (water transport), TaRD20-D1 (stomatal regulation), and TaABCB4-B1 (root growth), reflecting reduced water loss and improved physiological resilience. Our study presents a comprehensive regulatory map and robust targets for wheat drought adaptation and resilient cultivar breeding.
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